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Influence of Alloying Elements and Solution Heat Treatment on Microstructure and Microhardness of the Ni-Nb-M System (M = Al, Ti, Cr, Fe)

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Author(s):
Ottani, Vinicius C. ; Pereira, Mariana S. ; Arruda, Matheus S. T. ; Rossi, Mariana C. ; Afonso, Conrado R. M.
Total Authors: 5
Document type: Journal article
Source: MATERIALS RESEARCH-IBERO-AMERICAN JOURNAL OF MATERIALS; v. 26, p. 9-pg., 2023-01-01.
Abstract

Ni-based superalloys are widely used in critical components of aircraft engines and turbines and also in the petrochemical industry, for applications in highly corrosive environments. These alloys have as main characteristics their superior mechanical, corrosion and oxidation resistance at high temperatures, as well as creep resistance. The chemical composition associated with carrying out heat treatments directly influences the phases formed (such as the ordered cubic phase & gamma;'-Ni3(Al,Ti) in the fcc & gamma;-Ni matrix), and depending on the alloying elements and fraction, there is the possibility of an increase in mechanical strength. There is a certain gap in the literature regarding the study of ternary superalloys based on Ni-Nb, and the influence of the third alloying element on the microstructure and microhardness. In this context, the objective of the study is to characterize pseudo-eutectic alloys of the Ni-15Nb-xM and Ni-20Nb-xM systems (xM = 2Al, 4Ti, 15Fe and 15Cr, wt.%) and investigate the influence of alloy elements and solution heat treating on their microstructure and properties through X-Ray Diffraction, Optical Microscopy, Scanning Electron Microscopy and Vickers Microhardness. Microhardness and microstructures were significantly influenced by the addition of alloying elements. The addition of Cr had a significant effect on the hardness of the cast samples. All alloys showed microhardness and microstructural changes after solution heat treatment. (AU)

FAPESP's process: 21/03865-9 - Influence of surface modifications on bioactivity and (tribo) corrosion of beta Ti-Nb-(Zr) alloys with low elastic modulus for application as implant
Grantee:Mariana Correa Rossi
Support Opportunities: Scholarships in Brazil - Post-Doctoral
FAPESP's process: 20/06392-1 - Influence of the alloying elements addition on the microstructure and hardness of Ni-Nb-M alloys system (M = Al, Ti, Cr, Fe)
Grantee:Mariana Santos Pereira
Support Opportunities: Scholarships in Brazil - Scientific Initiation